首页> 外文期刊>International Journal of Heat and Mass Transfer >Effects of squealer rim height on heat/mass transfer on the floor of cavity squealer tip in a high turning turbine blade cascade
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Effects of squealer rim height on heat/mass transfer on the floor of cavity squealer tip in a high turning turbine blade cascade

机译:刮油器轮辋高度对高转速涡轮叶片叶栅中的腔式刮油器尖端底部热量/质量传递的影响

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The effects of h_(st)/s (squealer rim height-to-span ratio) on heat/mass transfer rate on the floor of the cavity squealer tip have been investigated in a high turning turbine blade cascade by employing the naphthalene sublimation technique along with oil film flow visualizations. Tested squealer rim heights are h_(st)/s = 0.00% (plane tip), 0.94%, 1.88%, 3.75%, and 5.63% for a tip gap height-to-span ratio of h/s = 1.02%. For comparison purpose, the tip gap height is changed from h/s = 034% to 1.70% for h_(st)/s = 3.75%. Heat/mass transfer rate on the cavity floor upstream of the mid-chord is affected by the leading edge tip gap vortices as well as by the reattachment of the incoming tip leakage flow to the cavity floor for lower h_(st)/s, as in the plane tip case, whereas it is influenced mainly by the impingement of the incoming tip leakage flow onto the cavity floor near the leading edge for higher h_(st)/s. On the other hand, heat/mass transfer rate downstream of the mid-chord is determined by the downwash flow which is entrapped by the suction-side squealer rim. With increasing h_(st)/s, average heat/mass transfer rate on the cavity floor decreases steeply at first and then decreases mildly in the same manner as over-tip leakage loss. Average heat/mass transfer rate on the cavity floor is more sensitive to the squealer rim height than to the tip gap height.
机译:通过使用萘升华技术,在高转数涡轮叶片级联中研究了h_(st)/ s(挡风玻璃轮辋高度与跨度之比)对空腔刮油器顶端地板上的热/质量传递速率的影响。油膜流动可视化。对于h / s = 1.02%的尖端间隙高度跨度,经测试的squealer轮辋高度为h_(st)/ s = 0.00%(平面尖端),0.94%,1.88%,3.75%和5.63%。为了比较,将尖端间隙高度从h / s = 034%更改为1.70%,其中h_(st)/ s = 3.75%。中弦上游腔底的传热/传质速率受前缘尖端间隙涡流以及进入的尖端泄漏流重新附着至腔底的h_(st)/ s较低的影响,因为在平面尖端的情况下,它主要受入射尖端泄漏流冲击到靠近前缘的空腔底部的影响较高h_(st)/ s的影响。另一方面,中弦下游的传热/传质速率由吸入侧刮水器轮缘截留的向下冲洗流确定。随着h_(st)/ s的增加,腔底的平均热量/质量传递速率首先急剧下降,然后以与尖端泄漏损失相同的方式缓慢下降。模腔底部的平均热量/质量传递速率对挡条边缘高度比对尖端间隙高度更为敏感。

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